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Flores-Morales, Patricio; Campos-Requena, Víctor H.; Gatica, Nicolás; Muñoz, Carla; Pérez, Mónica A.; Rivas, Bernabe´ L.; Sánchez, Susana A.; Suwalsky, Mario; Tapiero, Yesid; Urbano, Bruno F. – Journal of Chemical Education, 2017
Polymers are part of our lives; scientists dedicated to polymer science design new materials thinking about more eco-friendly methodologies and satisfying people's needs. In most universities, polymer science is taught by academics associated with the traditional chemistry departments (organic, analytical, physical, and inorganic chemistry). In…
Descriptors: Foreign Countries, Chemistry, College Science, Science Instruction
Pilcher, Spence C. – Journal of Chemical Education, 2017
An upper-division undergraduate polymer chemistry course was developed as a blended/hybrid course. The students met face-to-face once a week for 75 min with all other components being available online. Face-to-face meetings were used for class discussions/problem-based lectures, student presentations, hands-on activities, and examinations. Online…
Descriptors: Undergraduate Students, College Science, Blended Learning, Curriculum Design
Greene, Mark M.; And Others – 1970
The purpose of this system is to teach rural high school students the process of forming objects with expandable polystyrene plastic beads. Instruction in the system generally follows a three-step sequence in which the student: 1) views one of the four demonstration films; 2) progresses through a corresponding programed instruction book; and 3)…
Descriptors: Autoinstructional Aids, Course Descriptions, Instructional Films, Plastics
Hess, Harry L.; Finkral, Keith C. – Man/Society/Technology, 1977
Describes an integrated metal-plastic program which was incorporated into an industrial arts curriculum at Trenton State College (New Jersey). (TA)
Descriptors: Course Descriptions, Curriculum Development, Higher Education, Industrial Arts

Peppas, Nicholas A. – Chemical Engineering Education, 1980
Presents a description, course outline, review articles and rationale for a course on Polymerization Reaction Engineering at Purdue University, Indiana. (JN)
Descriptors: Chemical Industry, Chemical Reactions, Chemistry, Course Content

Ingen-Housz, A. J. – European Journal of Engineering Education, 1987
Presents an overview of the teaching of plastics at various levels of technological education in the Netherlands focusing on mechanical engineering. Highlights the design process and discusses the Dutch perspective of the role of materials engineering in engineering curricula. (ML)
Descriptors: College Science, Course Descriptions, Engineering Education, Engineering Technology
Claus, Robert; And Others – 1981
This course guide for a plastic technology course is one of four developed for the production area in the North Dakota senior high industrial arts education program. (Eight other guides are available for two other areas of Industrial Arts--energy/power and graphic communications.) Part 1 provides such introductory information as a definition and…
Descriptors: Behavioral Objectives, Careers, Course Descriptions, Course Objectives
Massuda, Rachel – 1989
These four reports provide details of projects to design and implement courses to be offered as requirements for the associate degree program in composites and reinforced plastics technology. The reports describe project activities that led to development of curricula for four courses: composite materials, composite materials fabrication I,…
Descriptors: Associate Degrees, Behavioral Objectives, Community Colleges, Course Content
Landers, Jack M. – 1984
This curriculum guide is an aid to administrators and instructors of industrial arts and vocational-technical school programs for the development of meaningful curriculum in plastics. The materials are intended for use at four levels: level I, exploring plastic technology; Level II, basic plastic technology; and levels III and IV, applied plastic…
Descriptors: Annotated Bibliographies, Behavioral Objectives, Careers, Course Content
Connecticut State Dept. of Education, Hartford. Div. of Vocational Education. – 1981
This curriculum guide provides topic outlines and objectives for 12 units of an industrial arts program in plastics at any grade level. Introductory material describes the scope and sequence of an Industrial Arts program, gives specific guidelines for Industrial Arts, and briefly discusses the nature of plastics. Unit titles include Orientation of…
Descriptors: Behavioral Objectives, Course Descriptions, Curriculum Guides, Equipment Maintenance
Ritz, John M.; And Others – 1980
This instructional resource guide is intended to assist the industrial arts (IA) teacher in implementing a comprehensive materials and Processes Technology program at the technical level in Virginia high schools. The course is designed to help students make informed educational and occupational choices and prepare them for advanced technical or…
Descriptors: Career Planning, Careers, Ceramics, Course Descriptions
Claus, Robert; And Others – 1981
This course guide for an industrial crafts course is one of four developed for the production area in the North Dakota senior high industrial arts education program. (Eight other guides are available for two other areas of Industrial Arts--energy/power and graphic communications.) Part 1 provides such introductory information as a definition and…
Descriptors: Behavioral Objectives, Ceramics, Course Descriptions, Course Objectives
Center for Occupational Research and Development, Inc., Waco, TX. – 1981
This course in chemistry for energy technology is one of 16 courses in the Energy Technology Series developed for an Energy Conservation-and-Use Technology curriculum. Intended for use in two-year postsecondary technical institutions to prepare technicians for employment, the courses are also useful in industry for updating employees in…
Descriptors: Adhesives, Adult Education, Behavioral Objectives, Ceramics
North Carolina State Dept. of Public Instruction, Raleigh. Div. of Vocational Education. – 1985
This teacher handbook provides recommended goals and objectives and suggested measures for competency-based courses in the vocational program area of industrial arts. A background and overview section contains the philosophy and rationale, discusses thinking skills and programs for exceptional children, and provides notes that explain how to read…
Descriptors: Architectural Drafting, Behavioral Objectives, Building Plans, Career Exploration
Connecticut State Dept. of Education, Hartford. Div. of Vocational-Technical Schools. – 1984
This combination progress record and course outline is designed for use by individuals teaching a course in precision sheet metal. Included among the topics addressed in the course are the following: employment opportunities in metalworking, measurement and layout, orthographic projection, precision sheet metal drafting, simple layout, hand tools,…
Descriptors: Academic Achievement, Behavioral Objectives, Blueprints, Check Lists
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